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Lima, Marcos – John Wiley & Sons, Inc, 2021
This book is a compilation of tools, techniques and frameworks for use in the field of entrepreneurship and innovation (E&I) education. Developed and honed over the past two decades, these teaching approaches are combined with well-versed practical insight. As professors know all too well, the human brain cannot articulate more than three or…
Descriptors: Entrepreneurship, Innovation, Teaching Methods, Cognitive Structures
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Ediger, Marlow – Hoosier Science Teacher, 2001
Teachers need to assist students in understanding what they read in science textbooks. Presents effective reading as a basis for good problem solving skills. (DDR)
Descriptors: Cognitive Structures, Content Area Reading, Elementary Secondary Education, Problem Solving
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Piez, Cynthia M.; Voxman, Mary H. – Mathematics Teacher, 1997
Presents a project that explored student choice of a solution method for quadratic inequalities. Students were first instructed in the use of the case, critical-number, and graphical methods using the graphing calculator. The majority of students chose graphical methods of solution. (DDR)
Descriptors: Calculators, Calculus, Cognitive Structures, Educational Strategies
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Fisher, Brian – School Science Review, 2001
Examines quantitative models in school physics, looking particularly at the degree to which they match the real world. Explores the positive aspects of a mismatch between models and real world conditions. (DDR)
Descriptors: Cognitive Structures, Educational Strategies, Foreign Countries, Higher Education
Leeman, Richard W. – 1987
Argumentation courses, which emphasize the theories of argumentation, and debate courses, which teach competitive debate, can effectively teach critical thinking, training students to see situations from a variety of perspectives and then to evaluate those perspectives for their relative merit. William G. Perry maps out nine stages by which…
Descriptors: Cognitive Structures, Critical Thinking, Debate, Decision Making
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Entrekin, Virginia S.; And Others – Mathematics Teacher, 1992
Presents two teaching ideas for mathematics instruction. The first employs "mind maps" as a method to help students learn, record, and recall mathematical information. Provides examples for solving quadratic equations and complex numbers. The second discusses two ways to find the average speed during a trip employing differing constant…
Descriptors: Cognitive Mapping, Cognitive Structures, Equations (Mathematics), Holistic Approach
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Dolmans, Diana H. J. M.; Snellen-Balendong, Hetty; Wolfhagen, Ineke H. A. P.; van der Vleuten, Cees P. M. – Medical Teacher, 1997
Lends support to the idea that the quality of the cases used in problem-based learning affects the nature of student learning in this context. Outlines seven principles adapted from research on learning and cognition that can help guide case design. Contains 22 references. (DDR)
Descriptors: Cognitive Psychology, Cognitive Structures, Higher Education, Knowledge Representation
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Thompson, Cathy L. – School Science and Mathematics, 1989
Discusses the advantages of using discrepant events in elementary school science classrooms in terms of motivation and problem solving skills. Describes the materials, procedures, and reasons behind five discrepant activities. (YP)
Descriptors: Cognitive Development, Cognitive Structures, Elementary School Science, Laboratory Experiments
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Langford, Peter – Australian Mathematics Teacher, 1989
The relationship between mental models used in problem solving and strategies children use when problem solving with manipulative materials are discussed. Teaching strategies for bridging the gap between the two are suggested. (CW)
Descriptors: Cognitive Development, Cognitive Structures, Elementary Education, Elementary School Mathematics
Manitoba Dept. of Education, Winnipeg. – 1983
This handbook has been structured to provide teachers (K-2) with the most recent research on problem solving. It contains information and practical applications which deal with the key concepts of problem solving in mathematics. The handbook consists of four sections. The first section establishes the background and gives the purposes of the…
Descriptors: Cognitive Development, Cognitive Structures, Curriculum Design, Decision Making